首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Analysis and application of a new type of sweep optimization on cantilevered stators for an industrial multistage axial-flow compressor
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Analysis and application of a new type of sweep optimization on cantilevered stators for an industrial multistage axial-flow compressor

机译:工业级多级轴流压缩机悬臂定子新型扫掠优化的分析与应用

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摘要

Sweep is often applied to transonic rotors to reduce the shock loss and to stator vanes to reduce the end-wall separation loss. In this paper, a new type of sweep is created for cantilevered stators in a 5-stage axial-flow compressor through a combined use of sensitivity analysis and an integrated optimization design method. The shape of sweep is focused on the stator hub region according to sensitivity analysis, and the new swept stator design is beneficial for reducing the stator loss at hub end and improving the compressor aerodynamic performance. Firstly, the optimization design of a single first stator row is conducted in the multistage environment, and the aerodynamic benefits gain is mainly due to two aspects. On the one hand, the effect of sweep near the hub reduces the stator inlet Mach number and further reduces the size of supersonic regions and the peak Mach number on the suction surface, thus decreasing the aerodynamic losses. On the other hand, the sweep also reduces the loading in the front part of the blade near the hub and weakens the leakage flow, thus reducing the flow blockage and decreasing the secondary losses in the hub region. After the optimization, the stator loss is reduced by 7.4%, leading to an increment of 0.21% of adiabatic efficiency of the multistage compressor. Secondly, the same optimization strategy is then applied to the remaining stator rows to maximize the aerodynamic benefits gain. The optimized compressor achieves an approximately 1% improvement of adiabatic efficiency over than the baseline one and also performs better over the whole operating range. Simultaneously, the operating range of the multistage compressor is widened. The results indicate that cantilevered stators with the type of sweep in this work have a significant potential to improve the performance of multistage axial-flow compressor.
机译:扫频通常应用于跨音速转子以减少冲击损失,并应用于定子叶片以减少端壁分离损失。在本文中,通过结合使用灵敏度分析和集成的优化设计方法,为5级轴流压缩机中的悬臂定子创建了一种新型扫掠。根据灵敏度分析,扫掠的形状集中在定子轮毂区域,新的扫掠定子设计有利于减少轮毂端的定子损耗并改善压缩机的空气动力性能。首先,在多级环境中对单个第一定子行进行了优化设计,空气动力学收益的增加主要来自两个方面。一方面,在轮毂附近吹扫的作用减小了定子入口马赫数,并且进一步减小了超音速区域的尺寸和吸力表面上的峰值马赫数,从而减小了空气动力学损失。另一方面,扫掠还减小了叶片的靠近轮毂的前部中的负荷,并且削弱了泄漏流,从而减小了流量阻塞并减小了轮毂区域中的二次损失。优化之后,定子损失减少了7.4%,从而使多级压缩机的绝热效率提高了0.21%。其次,然后将相同的优化策略应用于其余定子行,以最大程度地提高空气动力学收益。经过优化的压缩机比绝热压缩机的绝热效率提高了约1%,并且在整个工作范围内的性能也更好。同时,多级压缩机的工作范围扩大了。结果表明,在这项工作中,具有扫掠类型的悬臂定子具有显着提高多级轴流压缩机性能的潜力。

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